4.7 Article

The mean free path of ionizing photons at 5 < z < 6: evidence for rapid evolution near reionization

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stab2696

关键词

intergalactic medium; quasars: absorption lines; cosmology: observations; dark ages, reionization, first stars; large-scale structure of Universe

资金

  1. National Science Foundation (NSF) [AST-1751404]
  2. NSF [DGE-1326120]
  3. HST [AR15013.005-A]
  4. NASA [19-ATP19-0191]
  5. STFC [ST/T000171/1]
  6. W.M. Keck Foundation
  7. ESO telescopes at the La Silla Paranal Observatory [60.A-9024, 084.A-0390, 085.A-0299, 086.A-0162, 086.A-0574, 088.A-0897, 091.C-0934, 097.B-1070, 098.B-0537]

向作者/读者索取更多资源

The study shows that measurements at redshift z=5.1 are consistent with existing data, indicating minor bias from the proximity effect. However, at redshift z=6.0, neglecting the proximity effect leads to results biased high by a factor of two or more. This suggests rapid evolution in the mean free path of ionizing photons over the redshift range 5 < z < 6.
The mean free path of ionizing photons, lambda(mfp), is a key factor in the photoionization of the intergalactic medium (IGM). At z greater than or similar to 5, however, lambda(mfp) may be short enough that measurements towards QSOs are biased by the QSO proximity effect. We present new direct measurements of lambda(mfp) that address this bias and extend up to z similar to 6 for the first time. Our measurements at z similar to 5 are based on data from the Giant Gemini GMOS survey and new Keck LRIS observations of low-luminosity QSOs. At z similar to 6 we use QSO spectra from Keck ESI and VLT X-Shooter. We measure lambda(mfp) = 9.09(-1.28)(+1.62) proper Mpc and 0.75(-0.45)(+0.65) proper Mpc (68 percent confidence) at z = 5.1 and 6.0, respectively. The results at z = 5.1 are consistent with existing measurements, suggesting that bias from the proximity effect is minor at this redshift. At z = 6.0, however, we find that neglecting the proximity effect biases the result high by a factor of two or more. Our measurement at z = 6.0 falls well below extrapolations from lower redshifts, indicating rapid evolution in lambda(mfp) over 5 < z < 6. This evolution disfavours models in which reionization ended early enough that the IGM had time to fully relax hydrodynamically by z = 6, but is qualitatively consistent with models wherein reionization completed at z = 6 or even significantly later. Our mean free path results are most consistent with late reionization models wherein the IGM is still 20 percent neutral at z = 6, although our measurement at z = 6.0 is even lower than these models prefer.

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